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Trace elements and oxidative stress in the Ark shell Arca noae from a Mediterranean coastal lagoon (Bizerte lagoon, Tunisia): are there health risks associated with their consumption?

机译:来自地中海沿海泻湖(Bizerte Lagoon,Tunisia)的ARK Shell Arca Noae中的微量元素和氧化应激:是否存在与其消费相关的健康风险?

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The current study examined the concentrations of ten trace elements (TE) (nickel, chromium, cadmium, iron, zinc, manganese, aluminum, copper, selenium and lead) in the edible tissue of the Ark shell Arca noae (L. 1758) from a Mediterranean coastal lagoon, the Bizerte lagoon during 2013-2014. The analysis of several redox status biomarkers, metallothioneins (MTs), malondialdehyde (MDA), glutathione peroxidase (GPx), reduced glutathione (GSH) and acetylcholinesterase (AChE), was monitored as a response to TE bioaccumulation and environmental parameters variability. Significant differences (p < 0.05) were observed between mean seasonal TE concentrations in A. noae soft tissue. The highest TE concentrations in A. noae soft tissues were recorded during summer, which coincided with the increase of body dry weight (BDW) and the gonad index (GI). During this season, biomarker responses were enhanced, revealing significant increases of MTs, MDA and GSH levels as well as GPx activity in A. noae tissues, while a decrease of AChE activity was observed. The levels of TE analyzed in A. noae and several parameters used to assess the potential human risk (estimated weekly intake, target hazard quotient and target hazard risk) were lower than the permissible limits for safe seafood consumption. Consequently, this shellfish can be considered safe for human consumption. This preliminary study presents prospects for the valorization of this seafood product in Tunisia's food sector. It also gives basal information for future environmental assessment studies in which A. noae could be used as early warning tools in the field of biomonitoring programs and confirms the usefulness of biomarkers to monitor the health status of aquatic organisms.
机译:目前的研究检测了ARK Shell Arca Noae(L.1758)的可食用组织中的十种微量元素(TE)(TE)(TE)(TE)(TE)(镍,铬,镉,铁,锌,锰,铝,铜,硒和铅)地中海沿海泻湖,2013-2014期间Bizerte泻湖。监测对几种氧化还原性生物标志物,金属硫蛋白(MTS),丙硫脲(MDA),谷胱甘肽(GSH)和乙酰胆碱酯酶(ACHE)的响应,监测对TE生物累积和环境参数变异性的响应进行监测分析。在A. noae软组织中的平均季节TE浓度之间观察到显着差异(p <0.05)。在夏季记录A. noae软组织中的最高TE浓度,这与身体干重(BDW)和GONAD指数(GI)的增加恰逢。在本赛季中,增强了生物标记反应,揭示了诺伊组织中的MTS,MDA和GSH水平以及GPX活性的显着增加,同时观察到疼痛活性的降低。 A. NoAE中分析的TE水平和用于评估潜在人体风险的几个参数(估计每周摄入量,目标危险商和目标危险风险)低于安全海产消费的允许限制。因此,这种贝类可以被认为是安全的人类消费。这项初步研究为突尼斯的食品部门留下了这一海鲜产品的估值前景。它还为未来的环境评估研究提供了基础信息,其中A. Noae可以用作生物监测计划领域的预警工具,并确认生物标志物的有用性来监测水生生物的健康状况。

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